Baskaran Balraj, Muthukumarasamy Arulmozhi, Chidambaram Siva, Sugumaran Abimanyu, Ramachandran Krithikadevi, Rasu Manimuthu Thaneswari
Department of Petrochemical Technology, Bharathidasan Institute of Technology Campus, Anna University, Tiruchirappalli 620 024, India.
Department of Physics and Nanotechnology, SRM University, Kattankulathur 603 203, India.
IET Nanobiotechnol. 2017 Apr;11(3):241-246. doi: 10.1049/iet-nbt.2016.0040.
Biosynthesis of novel therapeutic nano-scale materials for biomedical and pharmaceutical applications has been enormously developed, since last decade. Herein, the authors report an ecological way of synthesising the platinum nanoparticles (PtNPs) using sp. for the first time The produced PtNPs exhibited the face centred cubic system. The fourier transform infrared spectrum revealed the existence of amino acids in proteins which serves as an essential reductant for the formation of PtNPs. The spherical morphology of the PtNPs with an average size of 20-50 nm was observed from topographical images of atomic force microscopy and field emission scanning electron microscopy. The X-ray fluorescence spectrum confirms the presence of PtNPs with higher purity. The PtNPs size was further confirmed with transmission electron microscopy analysis and the particles were found to exist in the same size regime. Additionally, PtNPs showed the characteristic surface plasmon resonance peak at 262 nm. Dynamic light scattering studies report that 97.2% of particles were <100 nm, with an average particle diameter of about 45 nm. Furthermore, 3-(4, 5-dimethyl-2-thiazolyl)-2, 5-diphenyl-tetrazolium assay based cytotoxicity analysis was conducted for the PtNPs, which showed the inhibitory concentration (IC) at 31.2 µg/ml against Michigan Cancer Foundation-7 breast cancer cells.
在过去十年中,用于生物医学和制药应用的新型治疗性纳米级材料的生物合成取得了巨大进展。在此,作者首次报道了一种利用 属细菌生态合成铂纳米颗粒(PtNPs)的方法。所制备的PtNPs呈现出面心立方结构。傅里叶变换红外光谱揭示了蛋白质中氨基酸的存在,这些氨基酸是形成PtNPs的重要还原剂。从原子力显微镜和场发射扫描电子显微镜的形貌图像中观察到平均尺寸为20 - 50 nm的PtNPs的球形形态。X射线荧光光谱证实了高纯度PtNPs的存在。通过透射电子显微镜分析进一步确认了PtNPs的尺寸,发现颗粒存在于相同的尺寸范围内。此外,PtNPs在262 nm处显示出特征性的表面等离子体共振峰。动态光散射研究报告称,97.2%的颗粒<100 nm,平均粒径约为45 nm。此外,对PtNPs进行了基于3-(4, 5-二甲基-2-噻唑基)-2, 5-二苯基四氮唑溴盐法的细胞毒性分析,结果显示其对密歇根癌症基金会-7乳腺癌细胞的抑制浓度(IC)为31.2 µg/ml。